Access to side-chain carbon information in deuterated solids under fast MAS through non-rotor-synchronized mixing.
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Summary
Combined with amide proton detection, aliphatic (13)C side chain chemical shift sets for solid-state NMR despite perdeuteration and fast MAS are unambiguously and sensitively detect whole side chain to backbone correlations for two proteins.
- Type
- article
- Published
- 2016-01-07
- Cited by
- 15
- References
- 45
- Access
- Open access
- OpenAlex
- https://openalex.org/W1843606148
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:45456005
Keywords
Mixing (physics), Deuterium, Rotor (electric), Carbon fibers, Carbon chain
References
- Nano-mole Scale Sequential Signal Assignment by 1H-Detected Protein Solid-state NMR using Ultra-Fast Magic-Angle Spinning and HIGHLIGHT Spectral Editing
- Asynchronous through-bond homonuclear isotropic mixing: application to carbon–carbon transfer in perdeuterated proteins under MAS
- Optimized Homonuclear Carr Purcell-Type Dipolar Mixing Sequences.
- Enhanced Resolution and Coherence Lifetimes in the Solid-State NMR Spectroscopy of Perdeuterated Proteins under Ultrafast Magic-Angle Spinning
- Analysis of proton-proton transfer dynamics in rotating solids and their use for 3D structure determination.
- Chemical shift correlation spectroscopy in rotating solids: Radio frequency‐driven dipolar recoupling and longitudinal exchange
- On the interaction of nuclear spins in a crystalline lattice
- Structural basis for rodlet assembly in fungal hydrophobins.
- Hepatitis E vaccine debuts
- Structural analysis of hydrophobins.
- Multiple-quantum spin counting in magic-angle-spinning NMR via low-power symmetry-based dipolar recoupling.
- Easy and unambiguous sequential assignments of intrinsically disordered proteins by correlating the backbone 15N or 13C′ chemical shifts of multiple contiguous residues in highly resolved 3D spectra
- Relaxation-optimised Hartmann–Hahn transfer using a specifically Tailored MOCCA-XY16 mixing sequence for carbonyl–carbonyl correlation spectroscopy in 13C direct detection NMR experiments
- Proton-detected scalar coupling based assignment strategies in MAS solid-state NMR spectroscopy applied to perdeuterated proteins.
- 13C–1H dipolar-assisted rotational resonance in magic-angle spinning NMR
- Double-nucleus enhanced recoupling for efficient 13C MAS NMR correlation spectroscopy of perdeuterated proteins.
- Detection of dynamic water molecules in a microcrystalline sample of the SH3 domain of α-spectrin by MAS solid-state NMR
- Enhanced double‐quantum nuclear magnetic resonance in spinning solids at rotational resonance
- Structure of a protein determined by solid-state magic-angle-spinning NMR spectroscopy
- Dependence of Amino Acid Side Chain 13C Shifts on Dihedral Angle: Application to Conformational Analysis
Cited by
- Enhancing NMR Sensitivity of Natural-Abundance Low-γ Nuclei by Ultrafast Magic-Angle-Spinning Solid-State NMR Spectroscopy
- NMR Spectroscopic Assignment of Backbone and Side-Chain Protons in Fully Protonated Proteins: Microcrystals, Sedimented Assemblies, and Amyloid Fibrils.
- Zuordnung der Rückgrat‐ und Seitenketten‐Protonen in vollständig protonierten Proteinen durch Festkörper‐NMR‐Spektroskopie: Mikrokristalle, Sedimente und Amyloidfibrillen
- Solid-state NMR spectroscopic trends for supramolecular assemblies and protein aggregates.
- Efficient low-power TOBSY sequences for fast MAS.
- Detection of side-chain proton resonances of fully protonated biosolids in nano-litre volumes by magic angle spinning solid-state NMR
- Direct amide 15N to 13C transfers for solid-state assignment experiments in deuterated proteins
- Atomic-resolution chemical characterization of (2x)72-kDa tryptophan synthase via four- and five-dimensional 1H-detected solid-state NMR
- NMR Assignment of Methyl Groups in Immobilized Proteins Using Multiple-Bond 13C Homonuclear Transfers, Proton Detection, and Very Fast MAS
- Oxygenate-based routes regulate syngas conversion over oxide–zeolite bifunctional catalysts
- Assignment of aromatic side-chain spins and characterization of their distance restraints at fast MAS
- 5D solid-state NMR spectroscopy for facilitated resonance assignment
- High-dimensional solid-state NMR facilitated by transverse-mixing optimal control
- Solid-state NMR spectroscopy of microcrystalline proteins
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